Impact of heterogeneity in stabilised clay on the settlement of ballasted track
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
Utgivare
Sammanfattning
Accurately predicting accumulated track settlement and the resulting deterioration
of vertical track geometry is a major challenge in railway infrastructure maintenance.
This issue is particularly critical for railways constructed on soft clay soils, where
repeated train loading can lead to excessive and differential settlements, increased
maintenance demand, reduced ride comfort, and decreased operational reliability.
An additional complexity arises from the spatial variability of soil conditions and
ground improvement measures, which can strongly influence track response and
long-term performance. This thesis investigates the dynamic vehicle–track–soil in
teraction and long-term settlement behaviour of ballasted railway tracks founded on
soft clay, with particular focus on the influence of spatial variability in lime-cement
column (LCC) improved ground. A numerical modelling framework is employed
by coupling dynamic finite-element simulations with empirical settlement models
for ballast and subgrade layers. Spatial variability in LCC properties is incorpor
ated through random field modelling. Different LCC reinforcement configurations
are evaluated to investigate their influence on track stiffness, stress distribution,
and accumulated settlements. In addition, sensitivity analyses are performed to
identify the most influential parameters governing settlement development and track
response. The results indicate that spatial variability significantly affects the distri
bution of track stiffness and the development of differential settlements, while LCC
reinforcement effectively reduces long-term settlements and improves overall track
performance. The developed framework also enables systematic evaluation of mitig
ation strategies for railway infrastructure subjected to spatially varying soft ground
conditions over time. The findings contribute to a better understanding of railway
behaviour on soft soils and provide a basis for more reliable prediction of long-term
track performance and maintenance planning.
Beskrivning
Ämne/nyckelord
vehicle–track–soil interaction, soft clay, long-term settlement, spatial variability, lime-cement columns, finite-element modelling, random fields
